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Q.(a) Describe with labelled diagram the Lead Chamber process for the manufacture of Sulphuric Acid.

(b) Describe with diagram the Laboratory method for the preparation of Ozone.
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2019Subjective· 5mImportance★★★★★
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Lead Chamber process for manufacture of H2SO4: Glover tower, lead-lined chambers and Gay-Lussac tower with NOx recycle
Lead Chamber process for manufacture of H2SO4: Glover tower, lead-lined chambers and Gay-Lussac tower with NOx recycle

Lead chamber: SO2_2 + air + NO/NO2_2 + steam →\to H2_2SO4_4 (NOx_x = oxygen carrier). Ozone (lab): 3O2→silent discharge2O33O_2 \xrightarrow{\text{silent discharge}} 2O_3. (OR: Haber process for NH3_3; H3_3PO4_4, H3_3PO3_3.)

  1. Lead Chamber process for sulphuric acid. SO2_2 (from burning sulphur/pyrites), air, steam and oxides of nitrogen (NO/NO2_2) are passed into large lead-lined chambers. The nitrogen oxides act as an oxygen carrier (homogeneous catalyst), transferring oxygen to SO2_2: SO2+NO2+H2O→H2SO4+NOSO_2 + NO_2 + H_2O \rightarrow H_2SO_4 + NO 2NO+O2→2NO2(NO is regenerated and reused)2NO + O_2 \rightarrow 2NO_2 \quad(\text{NO is regenerated and reused}) The dilute sulphuric acid ("chamber acid", ∼\sim65%) collected is later concentrated. (In the plant, a Glover tower feeds the chambers and a Gay-Lussac tower recovers the nitrogen oxides.)
  2. Laboratory preparation of ozone. A slow, silent electric discharge is passed through cold, dry oxygen in an apparatus called an ozoniser (e.g. Siemens' ozoniser). About 10% of the oxygen is converted to ozone (a reversible, endothermic change): 3O2→silent electric discharge2O3(ΔH=+ve)3O_2 \xrightarrow{\text{silent electric discharge}} 2O_3 \quad (\Delta H = +\text{ve}) A silent discharge (not sparking) is used so that the heat produced does not decompose the ozone back to oxygen. …

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